Animal Locomotion; or, walking, swimming, and flying: With a dissertation on aëronauticsPettigrew, James Bell
Science
Animal Locomotion; or, walking, swimming, and flying: With a dissertation on aëronautics
Pettigrew, James Bell
Aeronautics; Animal locomotion
“At fig. 23, which represents the gallop, the distance between two
successive impressions produced, say by the near fore foot, is eighteen
feet one inch and a half. Midway between these two impressions is
the mark of the near hind foot, which therefore subdivides the space
into nine feet and six-eighths of an inch, but each of these is again
subdivided into two halves by the impressions produced by the off fore
and off hind feet. It is thus seen that the horse’s body instead of
being propelled through the air by bounds or leaps even when going at
the highest attainable speed, acts on a system of levers, the mean
distance between the points of resistance of which is four feet six
inches. The exact length of stride, of course, only applies to that of
the particular horse observed, and the rate of speed at which he is
going. In the case of any one animal, the greater the speed the longer
is the individual stride. In progression, the body moves before a limb
is raised from the ground, as is most readily seen when the horse is
beginning its slowest action, as in traction.”[27]
[27] Gamgee in Journal of Anatomy and Physiology, vol. iii. pp. 375,
376.
At fig. 22, which represents the trot, the stride is ten feet one
inch. At fig. 21, which represents the walk, it is only five feet five
inches. The speed acquired, Mr. Gamgee points out, determines the
length of stride; the length of stride being the effect and evidence of
speed and not the cause of it. The momentum acquired in the gallop, as
already explained, greatly accelerates speed.
“In contemplating length of strides, with reference to the fulcra,
allowance has to be made for the length of the feet, which is to be
deducted from that of the strides, because the apex, or toe of the
horse’s hind foot forms the fulcrum in one instant, and the heel of
the fore foot in the next, and _vice versâ_. This phenomenon is very
obvious in the action of the human foot, and is remarkable also for the
range of leverage thus afforded in some of the fleetest quadrupeds, of
different species. In the hare, for instance, between the point of its
hock and the termination of its extended digits, there is a space of
upwards of six inches of extent of leverage and variation of fulcrum,
and in the fore limb from the _carpus_ to the toe-nails (whose function
in progression is not to be underrated) upwards of three inches of
leverage are found, being about ten inches for each lateral biped, and
the double of that for the action of all four feet. Viewed in this
way the stride is not really so long as would be supposed if merely
estimated from the space between the footprints.
“Many interesting remarks might be made on the length of the stride of
various animals; the full movement of the greyhound is, for instance,
upwards of sixteen feet; that of the hare at least equal; whilst that
of the Newfoundland dog is a little over nine feet.”[27]
Public-domain text, read in full here on John Shaqi.
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